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首页> 外文期刊>Plant Cell, Tissue and Organ Culture >Protoplast fusion for production of tetraploids and triploids: applications for scion and rootstock breeding in citrus
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Protoplast fusion for production of tetraploids and triploids: applications for scion and rootstock breeding in citrus

机译:原生质体融合生产四倍体和三倍体:在柑橘接穗和砧木育种中的应用

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Protoplast fusion technology has been utilized in many crops to generate allotetraploid somatic hybrids, and sometimes autotetraploids as a byproduct of the process. A brief history of this technology development is provided, along with a simple protocol developed for citrus, which can be easily adapted to other plants. Protoplast fusion has become a significant tool in ploidy manipulation that can be applied in various cultivar improvement schemes. In rare cases, a new somatic hybrid may have direct utility as an improved cultivar; however, the most important application of somatic hybridization is the building of novel germplasm as a source of elite breeding parents for various types of conventional crosses for both scion and rootstock improvement. Somatic hybridization is generating superior allotetraploid breeding parents for use in interploid crosses to generate seedless triploids. Seedlessness is a primary breeding objective for new fresh fruit citrus varieties, and several thousand triploid hybrids have been produced using somatic hybrids as the tetraploid parent. Protoplast fusion is also being utilized to produce somatic hybrids that combine complementary diploid rootstocks, which have shown good potential for tree size control. Tree size control has gained importance as a means of reducing harvesting costs, maximizing the efficiency of modern cold protection methodology, and facilitating the adaptation of new fruit production systems. Successful somatic hybridization in citrus rootstock improvement has enabled rootstock breeding at the tetraploid level via sexual hybridization, which can yield maximum genetic diversity in zygotic progeny upon which to impose selection for the many traits required in improved rootstock cultivars, including disease and insect resistance, broad adaptation, tree size control, and the ability to consistently produce high yields of quality fruit. Recent progress and successful examples of these applications are discussed. Finally, a discussion of the genetic potential of somatic hybrids as breeding parents, including meiotic behavior and inheritance is provided.
机译:原生质体融合技术已在许多农作物中用于产生异源四倍体体细胞杂种,有时还产生同四倍体作为该过程的副产品。提供了该技术发展的简要历史,以及为柑橘开发的简单协议,该协议可以轻松地适用于其他植物。原生质体融合已成为倍性操纵中的重要工具,可以应用于各种品种改良方案中。在极少数情况下,新的体细胞杂种可以直接用作改良品种。然而,体细胞杂交的最重要的应用是建立新的种质,以此作为接穗和砧木改良的各种常规杂交的优良育种亲本的来源。体细胞杂交产生了优良的异源四倍体育种亲本,用于种间杂交产生无核三倍体。无核是新的新鲜水果柑橘品种的主要育种目标,利用体细胞杂种作为四倍体亲本,已经生产了数千种三倍体杂种。原生质体融合也被用于生产体细胞杂种,该体杂种结合了互补的二倍体砧木,已显示出良好的树势控制潜力。控制树木大小已成为降低收获成本,最大程度提高现代防寒方法效率,促进适应新的水果生产系统的一种手段。柑橘砧木改良中成功的体细胞杂交使通过有性杂交能够在四倍体水平上进行砧木育种,这可以在合子后代中产生最大的遗传多样性,从而可以选择改良的砧木品种所需的许多性状,包括疾病和昆虫抗性适应能力,树木大小控制以及始终如一的高品质水果产量的能力。讨论了这些应用程序的最新进展和成功示例。最后,讨论了体细胞杂种作为育种亲本的遗传潜力,包括减数分裂行为和遗传。

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